Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker
A hierarchical three-dimensional network of carbon nanotubes on Si pillar substrate (3DN-CNTs) was developed for the accurate detection of oral squamous cell carcinoma (OSCC) in clinical saliva samples. The 3DN-CNTs were uniformly coated with a layer of aluminum oxides to enhance structural stabilit...
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sg-ntu-dr.10356-1377862020-06-01T10:13:36Z Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker Song, Chung Kil Oh, Eunkyul Kang, Min Sung Shin, Bum Seok Han, Soo Young Jung, Mingi Lee, Eui Seok Yoon, Soo-Young Sung, Myung Mo Ng, Wei Beng Cho, Nam-Joon Lee, Haiwon School of Materials Science & Engineering Engineering::Materials Cyfra 21-2 Fluorescence-based Immunoassay A hierarchical three-dimensional network of carbon nanotubes on Si pillar substrate (3DN-CNTs) was developed for the accurate detection of oral squamous cell carcinoma (OSCC) in clinical saliva samples. The 3DN-CNTs were uniformly coated with a layer of aluminum oxides to enhance structural stability during biomarker detection. Cytokeratin-19 antigen (Cyfra 21-1) was utilized as a model biomarker of OSCC for fluorescence-based immunosensor using 3DN-CNTs (3DN-CNTs sensor). The 3DN-CNTs sensor enhances the sensitivity of Cyfra 21-1 detection by increasing the density of immobilized antibody through high surface area of 3DN-CNTs and enhancing the accessibility of biomolecules through the ordered pathway of hierarchical structure. The reliable detection limit for sensing of Cyfra 21-1 was estimated as in the level of 0.5 ng/mL and the quantitative estimation of Cyfra 21-1 was analyzed by 4-parameter logistic (4-PL) model for curve-fitting analysis. Clinical applicability of 3DN-CNTs sensor was evaluated through correlation with the commercially available electrochemiluminescence (ECL) detection system in the hospital. The assay results of the two systems for clinical saliva samples showed a good linear correlation. The 3DN-CNTs sensor offers great potential for accurate diagnosis of OSCC using Cyfra 21-1 biomarker in clinical fluids. NRF (Natl Research Foundation, S’pore) MOE (Min. of Education, S’pore) 2020-04-15T01:53:48Z 2020-04-15T01:53:48Z 2018 Journal Article Song, C. K., Oh, E., Kang, M. S., Shin, B. S., Han, S. Y., Jung, M., . . . Lee, H. (2018). Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker. Analytica Chimica Acta, 1027, 101-108. doi:10.1016/j.aca.2018.04.025 0003-2670 https://hdl.handle.net/10356/137786 10.1016/j.aca.2018.04.025 29866259 2-s2.0-85046133946 1027 101 108 en Analytica Chimica Acta © 2018 Elsevier B.V. All rights reserved. |
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Engineering::Materials Cyfra 21-2 Fluorescence-based Immunoassay Song, Chung Kil Oh, Eunkyul Kang, Min Sung Shin, Bum Seok Han, Soo Young Jung, Mingi Lee, Eui Seok Yoon, Soo-Young Sung, Myung Mo Ng, Wei Beng Cho, Nam-Joon Lee, Haiwon Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
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A hierarchical three-dimensional network of carbon nanotubes on Si pillar substrate (3DN-CNTs) was developed for the accurate detection of oral squamous cell carcinoma (OSCC) in clinical saliva samples. The 3DN-CNTs were uniformly coated with a layer of aluminum oxides to enhance structural stability during biomarker detection. Cytokeratin-19 antigen (Cyfra 21-1) was utilized as a model biomarker of OSCC for fluorescence-based immunosensor using 3DN-CNTs (3DN-CNTs sensor). The 3DN-CNTs sensor enhances the sensitivity of Cyfra 21-1 detection by increasing the density of immobilized antibody through high surface area of 3DN-CNTs and enhancing the accessibility of biomolecules through the ordered pathway of hierarchical structure. The reliable detection limit for sensing of Cyfra 21-1 was estimated as in the level of 0.5 ng/mL and the quantitative estimation of Cyfra 21-1 was analyzed by 4-parameter logistic (4-PL) model for curve-fitting analysis. Clinical applicability of 3DN-CNTs sensor was evaluated through correlation with the commercially available electrochemiluminescence (ECL) detection system in the hospital. The assay results of the two systems for clinical saliva samples showed a good linear correlation. The 3DN-CNTs sensor offers great potential for accurate diagnosis of OSCC using Cyfra 21-1 biomarker in clinical fluids. |
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School of Materials Science & Engineering |
author_facet |
School of Materials Science & Engineering Song, Chung Kil Oh, Eunkyul Kang, Min Sung Shin, Bum Seok Han, Soo Young Jung, Mingi Lee, Eui Seok Yoon, Soo-Young Sung, Myung Mo Ng, Wei Beng Cho, Nam-Joon Lee, Haiwon |
format |
Article |
author |
Song, Chung Kil Oh, Eunkyul Kang, Min Sung Shin, Bum Seok Han, Soo Young Jung, Mingi Lee, Eui Seok Yoon, Soo-Young Sung, Myung Mo Ng, Wei Beng Cho, Nam-Joon Lee, Haiwon |
author_sort |
Song, Chung Kil |
title |
Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
title_short |
Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
title_full |
Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
title_fullStr |
Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
title_full_unstemmed |
Fluorescence-based immunosensor using three-dimensional CNT network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
title_sort |
fluorescence-based immunosensor using three-dimensional cnt network structure for sensitive and reproducible detection of oral squamous cell carcinoma biomarker |
publishDate |
2020 |
url |
https://hdl.handle.net/10356/137786 |
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1681057835616567296 |